The product, High Quality Polyethylene, Oxidized cas 68441 - 17 - 8, features a high - level of quality. Polyethylene is a common type of polymer, and the oxidized form has unique chemical properties. The CAS number 68441 - 17 - 8 serves as a unique identifier for this specific chemical compound in the global chemical database.
It is typically available in a solid form, with a specific molecular structure. The oxidation process modifies the surface and some of the chemical characteristics of the polyethylene, making it different from regular polyethylene. The physical state is often a powder or small granules, which can be easily processed in various industrial applications. Its density, melting point, and other physical parameters may vary depending on the specific production process and grade of the product.
High Quality Polyethylene, Oxidized has a wide range of applications. In the plastics industry, it can be used as an additive in plastic formulations. It can improve the compatibility between different polymers in a blend, enhancing the overall mechanical properties of the final plastic product, such as impact resistance and tensile strength. For example, when added to polyethylene - based plastic products, it can increase the product's durability and performance.
In the coating industry, it can be used as a modifier. The oxidized polyethylene can improve the adhesion of coatings to various substrates, such as metals and plastics. It can also enhance the chemical resistance of the coatings, protecting the underlying materials from corrosion and environmental damage. Additionally, it can be used in the production of inks, improving the printability and adhesion of inks on different surfaces.
When using High Quality Polyethylene, Oxidized, it is important to follow proper handling procedures. First, ensure that the working environment is well - ventilated to prevent the inhalation of dust particles. Wear appropriate personal protective equipment, such as gloves and masks.
For plastic processing, it can be added directly to the polymer melt during the extrusion or injection - molding process. The recommended dosage usually ranges from 1% to 5% of the total polymer weight, depending on the specific requirements of the final product. Mix it thoroughly with the polymer to ensure uniform dispersion.
In the coating and ink industries, it can be dispersed in a suitable solvent or resin system. High - shear mixing equipment is often used to achieve a homogeneous dispersion. The dispersion process may require some time and proper temperature control to ensure the best performance of the product.
Case 1: A plastic manufacturing company was producing polyethylene pipes. By adding 2% of High Quality Polyethylene, Oxidized to the polyethylene resin, they noticed a significant improvement in the pipe's impact resistance. The pipes were less likely to crack during installation and use, reducing the number of product returns and customer complaints. The company also found that the production process became more stable, with fewer defects in the final products.
Case 2: A coating manufacturer was developing a new metal - coating product. They incorporated High Quality Polyethylene, Oxidized into the coating formulation. The result was a coating with excellent adhesion to the metal surface. In salt - spray tests, the coated metal samples showed much better corrosion resistance compared to the samples without the oxidized polyethylene. The coating also had a smoother finish, improving the aesthetic appearance of the coated metal products.
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